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Rabbit-specific computational modelling of ventricular cell electrophysiology: Using populations of models to explore variability in the response to ischemia

机译:兔特定的心室细胞电生理计算模型:使用模型种群探索对缺血反应的变异性

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摘要

Computational modelling, combined with experimental investigations, is a powerful method for investigating complex cardiac electrophysiological behaviour. The use of rabbit-specific models, due to the similarities of cardiac electrophysiology in this species with human, is especially prevalent. In this paper, we first briefly review rabbit-specific computational modelling of ventricular cell electrophysiology, multi-cellular simulations including cellular heterogeneity, and acute ischemia. This mini-review is followed by an original computational investigation of variability in the electrophysiological response of two experimentally-calibrated populations of rabbit-specific ventricular myocyte action potential models to acute ischemia. We performed a systematic exploration of the response of the model populations to varying degrees of ischemia and individual ischemic parameters, to investigate their individual and combined effects on action potential duration and refractoriness. This revealed complex interactions between model population variability and ischemic factors, which combined to enhance variability during ischemia. This represents an important step towards an improved understanding of the role that physiological variability may play in electrophysiological alterations during acute ischemia. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:计算建模与实验研究相结合,是研究复杂的心脏电生理行为的有力方法。由于该物种与人类心脏电生理学的相似性,使用兔子特有的模型尤为普遍。在本文中,我们首先简要回顾了兔特定的心室细胞电生理学计算模型,包括细胞异质性和急性缺血的多细胞模拟。这份简短的综述之后是对两个实验校准的兔特异性心室肌细胞动作电位模型对急性缺血的电生理反应变异性的原始计算研究。我们对模型人群对不同程度的缺血和个体缺血参数的反应进行了系统的探索,以研究它们对动作电位持续时间和耐火度的个体影响和综合影响。这揭示了模型群体变异性与局部缺血因素之间的复杂相互作用,这些相互作用共同增强了局部缺血期间的变异性。这代表着迈出了重要的一步,以更好地理解急性缺血期间生理变异性在电生理变化中可能发挥的作用。 (C)2016作者。由Elsevier Ltd.发布

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